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首页> 外文期刊>Bulletin of materials science >Phase analysis and dielectric properties of ceramics in PbOa€“MgOa€“ZnOa€“Nb2O5 system: A comparative study of materials obtained by ceramic and molten salt synthesis routes
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Phase analysis and dielectric properties of ceramics in PbOa€“MgOa€“ZnOa€“Nb2O5 system: A comparative study of materials obtained by ceramic and molten salt synthesis routes

机译:PbOa / MgOa / ZnOa / Nb2O5体系中陶瓷的相分析和介电性能:陶瓷和熔融盐合成路线所得材料的比较研究

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摘要

Compositions of the type 3PbOa€“MgO/ZnOa€“Nb2O5 were synthesized by the ceramic route at 1000?°C and sintered at 1200?°C. Powder X-ray diffraction studies of the 1000?°C heated products show the presence of the cubic pyrochlore and the columbite (Mg/ZnNb2O6) type phase in the ratio of 3 : 1 for all possible combinations of MgO and ZnO. Further heating at 1200?°C led to a decrease in the cubic pyrochlore phase and an increase in the columbite phase by around 10%. Compacted pellets sintered further showed the appearance of the perovskite phase. Similar compositions synthesized using the KCla€“NaCl molten salt method at 900?°C for 6 h gave a significant amount of the cubic perovskite related phase of the type Pb(Mg/Zn)1/3Nb2/3O3 for all compositions containing MgO. The amount of the perovskite phase was nearly 55% for the Mg rich compositions and decreased with increase in Zn content, the pure Zn composition yielding mainly the cubic pyrochlore phase. On sintering these phases at 1000?°C the perovskite phase content decreased. The dielectric constant of the composite materials formed by the ceramic route was in the region of 14 to 20 and varied little with frequency. The composites obtained by the molten salt method, however, showed much larger dielectric constants in the region 40a€“150 at 500 kHz for various compositions. The dielectric loss tangent of these composites were lower by an order (0.005a€“0.03 at 500 kHz) compared to the ceramic route.
机译:通过陶瓷法在1000℃下合成3PbOa·“ MgO / ZnOa·” Nb 2 O 5 型组成,并在1200℃下烧结。对1000℃加热的产物进行的粉末X射线衍射研究表明,在该相中存在立方烧绿石和the(Mg / ZnNb 2 O 6 )型相。 MgO和ZnO的所有可能组合的比例为3:1。在1200℃下进一步加热导致立方烧绿石相减少,而钴lum石相增加约10%。烧结的压实颗粒进一步显示钙钛矿相的外观。使用KCla?NaCl熔融盐法在900°C下合成6h合成的相似成分,得到了大量的Pb(Mg / Zn) 1/3 Nb型立方钙钛矿相关相对于所有含MgO的组合物, 2/3 O 3 。对于富含Mg的组合物而言,钙钛矿相的量接近55%,并且随着Zn含量的增加而减少,纯Zn组合物主要产生立方烧绿石相。在1000℃下烧结这些相时,钙钛矿相含量降低。通过陶瓷路线形成的复合材料的介电常数在14至20的范围内,并且随频率变化很小。然而,通过熔盐方法获得的复合材料,对于各种成分,在500 kHz处的40a-150范围内显示出更大的介电常数。与陶瓷路径相比,这些复合材料的介电损耗角正切值降低了一个数量级(500 kHz时为0.005a?0.03)。

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